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Debonding dynamics in FRP plated beams: high order cohesive FE formulation and parametric sensitivity

机译:FRP镀层梁的脱胶动力学:高阶粘结有限元公式和参数灵敏度

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This paper studies the dynamic characteristics of the debonding mechanism in beams strengthened with FRP. The paper formulates a special finite element for the dynamic analysis of the layered beam and looks into the parameters that govern the dynamic phenomenon. The finite element is based on an extended high order theory that incorporates a rich 2D elasticity based stress and displacement fields in the adhesive layer and allows to consider debonding at the two physical interfaces of that layer through cohesive interfaces. These concepts are combined with the basic form of inertial forces to formulate a multi-layered finite element that utilizes the versatility of the FE method and avoids the need to mesh through the thickness of each layer. The computational framework is then used to study the dynamic debonding process and to examine the impact of a series of geometrical, elastic, mechanical, and physical parameters. Among other findings, the investigation reveals the potentially negative impact of stiffening the FRP layer on the dynamic failure, the sensitivity to the properties of the adhesive, and the interesting insensitivity to the loading rate (within the examined range). Finally, the sensitivity of the response to the properties of the cohesive interfaces and the idea of characterizing those interfaces based on dynamic observations are discussed.
机译:研究了FRP加固梁的脱粘机理的动力特性。本文为层状梁的动力分析制定了一种特殊的有限元,并研究了控制动力现象的参数。有限元基于扩展的高阶理论,该理论在粘合剂层中结合了基于2D弹性的丰富应力和位移场,并允许考虑通过粘合界面在该层的两个物理界面处剥离。这些概念与惯性力的基本形式相结合,从而形成了多层有限元,该有限元利用了有限元方法的多功能性,并且无需在每一层的厚度上进行网格划分。然后,使用该计算框架来研究动态脱胶过程并检查一系列几何,弹性,机械和物理参数的影响。除其他发现外,研究还发现,使FRP层变硬可能会对动态破坏产生负面影响,对胶粘剂性能的敏感性以及对加载速率的不敏感(在所研究的范围内)。最后,讨论了对内聚界面特性响应的敏感性以及基于动态观察表征这些界面的想法。

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